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Quantitative imaging of protein interactions in the cell nucleus

机译:定量成像细胞核中蛋白质的相互作用

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摘要

Over the past decade, genetically encoded fluorescent proteins have become widely used as noninvasive markers in living cells. The development of fluorescent proteins, coupled with advances in digital imaging, has led to the rapid evolution of live-cell imaging methods. These approaches are being applied to address biological questions of the recruitment, co-localization, and interactions of specific proteins within particular subcellular compartments. In the wake of this rapid progress, however, come important issues associated with the acquisition and analysis of ever larger and more complex digital imaging data sets. Using protein localization in the mammalian cell nucleus as an example, we will review some recent developments in the application of quantitative imaging to analyze subcellular distribution and co-localization of proteins in populations of living cells. In this report, we review the principles of acquiring fluorescence resonance energy transfer (FRET) microscopy measurements to define the spatial relationships between proteins. We then discuss how fluorescence lifetime imaging microscopy (FLIM) provides a method that is independent of intensity-based measurements to detect localized protein interactions with spatial resolution. Finally, we consider potential problems associated with the expression of proteins fused to fluorescent proteins for FRET-based measurements from living cells.
机译:在过去的十年中,遗传编码的荧光蛋白已广泛用作活细胞中的非侵入性标记。荧光蛋白的发展,再加上数字成像技术的发展,已经导致活细胞成像方法的快速发展。这些方法正被用于解决特定蛋白质在特定亚细胞区室中的募集,共定位和相互作用的生物学问题。然而,随着这种快速发展,随之而来的是与更大和更复杂的数字成像数据集的获取和分析相关的重要问题。以哺乳动物细胞核中的蛋白质定位为例,我们将回顾定量成像在分析活细胞群体中蛋白质的亚细胞分布和共定位中应用的一些最新进展。在本报告中,我们回顾了获取荧光共振能量转移(FRET)显微镜测量以定义蛋白质之间空间关系的原理。然后,我们将讨论荧光寿命成像显微镜(FLIM)如何提供一种独立于基于强度的测量值来检测具有空间分辨率的局部蛋白质相互作用的方法。最后,我们考虑了与从活细胞进行基于FRET的测量的荧光蛋白融合蛋白表达相关的潜在问题。

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